Perkins-Balding D, Duval-Valentin G, Glasgow A C
Department of Microbiology and Immunology, Emory University School of Medicine, Atlanta, Georgia 30322, USA.
J Bacteriol. 1999 Aug;181(16):4937-48. doi: 10.1128/JB.181.16.4937-4948.1999.
The gram-negative marine bacterium Pseudoalteromonas atlantica produces extracellular polysaccharide (EPS) that is important in biofilm formation by this bacterium. Insertion and precise excision of IS492 at a locus essential for extracellular polysaccharide production (eps) controls phase variation of EPS production in P. atlantica. Examination of IS492 transposition in P. atlantica by using a PCR-based assay revealed a circular form of IS492 that may be an intermediate in transposition or a terminal product of excision. The DNA sequence of the IS492 circle junction indicates that the ends of the element are juxtaposed with a 5-bp spacer sequence. This spacer sequence corresponds to the 5-bp duplication of the chromosomal target sequence found at all IS492 insertion sites on the P. atlantica chromosome that we identified by using inverse PCR. IS492 circle formation correlated with precise excision of IS492 from the P. atlantica eps target sequence when introduced into Escherichia coli on a plasmid. Deletion analyses of the flanking host sequences at the eps insertion site for IS492 demonstrated that the 5-bp duplicated target sequence is essential for precise excision of IS492 and circle formation in E. coli. Excision of IS492 in E. coli also depends on the level of expression of the putative transposase, MooV. A regulatory role for the circular form of IS492 is suggested by the creation of a new strong promoter for expression of mooV by the joining of the ends of the insertion sequence element at the circle junction.
革兰氏阴性海洋细菌大西洋假交替单胞菌产生胞外多糖(EPS),这种多糖在该细菌的生物膜形成中起着重要作用。IS492在胞外多糖产生(eps)所必需的位点插入和精确切除,控制着大西洋假交替单胞菌中EPS产生的相变。通过基于PCR的分析检测IS492在大西洋假交替单胞菌中的转座,发现了一种环形的IS492,它可能是转座的中间体或切除的终产物。IS492环形连接的DNA序列表明,该元件的末端与一个5碱基对的间隔序列并列。这个间隔序列对应于我们通过反向PCR在大西洋假交替单胞菌染色体上所有IS492插入位点发现的染色体靶序列的5碱基对重复。当IS492通过质粒导入大肠杆菌时,IS492环的形成与IS492从大西洋假交替单胞菌eps靶序列的精确切除相关。对IS492在eps插入位点侧翼宿主序列的缺失分析表明,5碱基对重复的靶序列对于IS492在大肠杆菌中的精确切除和环的形成至关重要。IS492在大肠杆菌中的切除也取决于假定转座酶MooV的表达水平。IS492环形形式的调控作用是由环连接处插入序列元件末端的连接产生一个新的用于mooV表达的强启动子所暗示的。